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振动触觉信息可改善本体感受性的目标定位。

Vibrotactile information improves proprioceptive reaching target localization.

机构信息

Centre de Recherche en Neurosciences de Lyon (CRNL), ImpAct Team, Inserm U1028, CNRS UMR 5292, University Claude Bernard Lyon 1, Bron, France.

School of Optometry, University of Montreal, Montréal, Québec, Canada.

出版信息

PLoS One. 2018 Jul 6;13(7):e0199627. doi: 10.1371/journal.pone.0199627. eCollection 2018.

Abstract

When pointing to parts of our own body (e.g., the opposite index finger), the position of the target is derived from proprioceptive signals. Consistent with the principles of multisensory integration, it has been found that participants better matched the position of their index finger when they also had visual cues about its location. Unlike vision, touch may not provide an additional information about finger position in space, since fingertip tactile information theoretically remains the same irrespective of the postural configuration of the upper limb. However, since tactile and proprioceptive information are ultimately coded within the same population of posterior parietal neurons within high-level spatial representations, we nevertheless hypothesized that additional tactile information could benefit the processing of proprioceptive signals. To investigate the influence of tactile information on proprioceptive localization, we asked 19 participants to reach with the right hand towards the opposite unseen index finger (proprioceptive target). Vibrotactile stimuli were applied to the target index finger prior to movement execution. We found that participants made smaller errors and more consistent reaches following tactile stimulation. These results demonstrate that transient touch provided at the proprioceptive target improves subsequent reaching precision and accuracy. Such improvement was not observed when tactile stimulation was delivered to a distinct body part (the shoulder). This suggests a specific spatial integration of touch and proprioception at the level of high-level cortical body representations, resulting in touch improving position sense.

摘要

当我们指向自己身体的某个部位(例如,相反的食指)时,目标的位置是源自本体感觉信号。与多感觉整合的原则一致,已经发现当参与者也有关于其位置的视觉线索时,他们更好地匹配了食指的位置。与视觉不同,触摸可能不会提供关于手指在空间中位置的额外信息,因为理论上无论上肢的姿势如何,指尖的触觉信息都保持不变。然而,由于触觉和本体感觉信息最终在高级空间表示中的同一群后顶叶神经元中进行编码,因此我们假设额外的触觉信息可以有益于本体感觉信号的处理。为了研究触觉信息对本体感觉定位的影响,我们要求 19 名参与者用右手伸向看不见的相反食指(本体感觉目标)。在执行运动之前,将振动触觉刺激施加到目标食指上。我们发现,参与者在触觉刺激后做出的错误更小,并且更一致地到达目标。这些结果表明,在本体感觉目标处提供的短暂触摸可提高后续的伸手精度和准确性。当触觉刺激施加到不同的身体部位(肩部)时,不会观察到这种改善。这表明在高级皮质身体表示的水平上,触觉和本体感觉的特定空间整合导致触摸改善位置感。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6caa/6034815/5ae27e95d7ff/pone.0199627.g001.jpg

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